Synthesis method and application of uranyl adsorbent material
A synthesis method and technology of adsorption materials, which are applied in the field of synthesis of uranyl adsorption materials, can solve the problems of low adsorption capacity, poor adsorption selectivity, and high manufacturing cost, and achieve the effects of high physical adsorption pores, improved performance, and large specific surface area
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Embodiment 1
[0039] (1) Put 17 parts by weight of straw fiber (fineness ≥ 30 mesh, ash content ≤ 2wt%) into a mixing tank, add 500 parts by weight of clear water, 130 parts by weight of polyvinyl alcohol (brand 1799), 20 parts by weight of styrene, propylene 0.9 parts by weight of nitrile, 0.5 parts by weight of fatty alcohol polyoxyethylene ether (brand AEO-3), 10 parts by weight of isopropanol, and stir evenly;
[0040] (2) Send the feed liquid prepared in (1) to irradiate under the electron beam, so that the absorbed dose of the feed liquid reaches 110kGy, and then the gel plate is obtained;
[0041] (3) cutting the gel plate obtained in (2) into rubber particles through a cutting machine;
[0042] (4) Add 10 parts by weight of the particles obtained in (3) into 1.5 parts by weight of acrylonitrile, mix uniformly, and the irradiation dose under the electron beam reaches 50kGy to obtain a grafted cross-linked body;
[0043] (5) Add 4 parts by weight of hydroxylamine hydrochloride to the...
Embodiment 2
[0047] (1) Put 13 parts by weight of wood pulp fibers (fineness ≥ 40 mesh, ash content ≤ 2wt%) into a mixing tank, add 500 parts by weight of clear water, 100 parts by weight of polyvinyl alcohol (brand 1788), polystyrene emulsion (solid 10 parts by weight, 1.2 parts by weight of acrylonitrile, 0.5 parts by weight of fatty alcohol polyoxyethylene ether (brand AEO-9), 10 parts by weight of isopropanol, and 0.2 parts by weight of divinylbenzene part, 4 parts by weight of styrene, stir evenly;
[0048] (2) Send the feed liquid prepared in (1) to irradiate under the electron beam, so that the absorbed dose of the feed liquid reaches 140kGy, and then the gel plate is obtained;
[0049] (3) cutting the gel plate obtained in (2) into rubber particles through a cutting machine;
[0050] (4) 10 parts by weight of the particles obtained in (3) were added to 1.2 parts by weight of acrylonitrile, mixed uniformly, and the irradiation dose reached 65kGy under the electron beam to obtain a ...
Embodiment 3
[0054] (1) Put 11 parts by weight of straw fiber (fineness ≥ 30 mesh, ash content ≤ 2wt%) into a mixing tank, add 600 parts by weight of clear water, 130 parts by weight of polyvinyl alcohol (brand 1799), 20 parts by weight of styrene, propylene 0.9 parts by weight of nitrile, 0.5 parts by weight of fatty alcohol polyoxyethylene ether (brand AEO-3), 12 parts by weight of isopropanol, and stir evenly;
[0055] (2) Send the feed liquid prepared in (1) to irradiate under the electron beam, so that the absorbed dose of the feed liquid reaches 100kGy, and then the gel plate is obtained;
[0056] (3) cutting the gel plate obtained in (2) into rubber particles through a cutting machine;
[0057] (4) Add 10 parts by weight of the particles obtained in (3) to 1.8 parts by weight of acrylonitrile, mix uniformly, and the irradiation dose reaches 60kGy under the electron beam to obtain a grafted cross-linked body;
[0058] (5) Add 4.8 parts by weight of hydroxylamine hydrochloride to the...
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